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COUFALÍK, P. DAŠEK, O. KACHTÍK, J. KUDRNA, J. STOKLÁSEK, S.
Originální název
The Stress Relaxation of Modified Bitumens
Typ
článek v časopise - ostatní, Jost
Jazyk
angličtina
Originální abstrakt
The Asphalt pavements in Central and Eastern Europe have to be resistant to high and very low temperatures and climatic changes. Especially emphasize influence of low temperatures seems to be critical parameter. That is why the modified bitumens with low temperature susceptibility and with high resistance to low temperature cracking are searched for. Dynamic Shear Rheometer (DSR) can be used as a quick method that can evaluate the modification system of bituminous binders. The advantage of DSR testing is also related to possibility of comparison of unaged and aged bitumen. The relaxations of shear stress of several asphalt rubber binders (containing 11 %, 13 %, 15 % and 17 % of crumb rubber) and paving bitumen were determined in DSR at the temperature of 0 degrees Celsius and -10 degrees Celsius. Relaxation tests were performed in the controlled strain regime. Total shear strain (rotation of upper geometry) was set to 1 % of the sample thickness and stress was applied for 60 s. Relaxation time was set to a period of 15 minutes. The shear stress relaxation behaviour of unaged bitumens and bitumens aged after 75 minutes and 225 minutes in Rolling Thin Film Oven Test (RTFOT) is presented and discussed.
Klíčová slova
Rheological properties, Bituminous binder, Low Temperature Properties of Bituminous Mixtures, Binder ageing, Relaxation test
Autoři
COUFALÍK, P.; DAŠEK, O.; KACHTÍK, J.; KUDRNA, J.; STOKLÁSEK, S.
Rok RIV
2015
Vydáno
1. 5. 2015
Nakladatel
De Gruyter
Místo
Berlin
ISSN
1464-8164
Periodikum
The International Journal of Pavement Engineering and Asphalt Technology (PEAT)
Ročník
16
Číslo
1
Stát
Spolková republika Německo
Strany od
66
Strany do
81
Strany počet
BibTex
@article{BUT114545, author="Pavel {Coufalík} and Ondřej {Dašek} and Jiří {Kachtík} and Jan {Kudrna} and Svatopluk {Stoklásek}", title="The Stress Relaxation of Modified Bitumens", journal="The International Journal of Pavement Engineering and Asphalt Technology (PEAT)", year="2015", volume="16", number="1", pages="66--81", doi="10.1515/ijpeat-2015-0004", issn="1464-8164" }